Matrix Interference in Identification of Ignitable Liquid Debris on Fire Site
摘 要
从基质热解机理、影响因素、检测数据解读、数据库建立等方面综述了火灾现场易燃液体残留物鉴定中基质干扰的研究进展,并对该领域未来的发展方向进行了展望(引用文献45篇)。
Abstract
From the aspects of matrix pyrolysis mechanism, influencing factors, interpretation of test data and database establishment, a review on the research progress of matrix interference in the identification of ignitable liquid debris on fire site was presented. Prospects for development in this field were also given (45 ref. cited).
中图分类号 O656.2 DOI 10.11973/lhjy-hx201810024
所属栏目 综述
基金项目 国家重点研发计划项目(2017YFC0803804);证据科学教育部重点实验室(中国政法大学)开放基金资助课题(2016KFKT02);公安部科技强警基础工作专项(2016GABJC20);基本科研业务费专项资金项目(2016JB006)
收稿日期 2017/10/29
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备注程芳彬,博士,研究方向为刑事科学技术
引用该论文: CHENG Fangbin,SUN Zhenwen,LIU Zhanfang,ZHANG Guannan,QIAO Ting,LIU Yao. Matrix Interference in Identification of Ignitable Liquid Debris on Fire Site[J]. Physical Testing and Chemical Analysis part B:Chemical Analysis, 2018, 54(10): 1234~1240
程芳彬,孙振文,刘占芳,张冠男,乔婷,刘耀. 火灾现场易燃液体残留物鉴定中的基质干扰[J]. 理化检验-化学分册, 2018, 54(10): 1234~1240
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参考文献
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【35】BLOMQVIST P, ROSELL L, SIMONSON M. Fire Technology[J], 2004,40(1):39-58.
【36】PRATHER K R, TOWNER S E, MCGUFFIN V L, et al. Journal of Forensic Sciences[J], 2014,59(1):52-60.
【37】邓雨欣.消防技术与产品信息[J], 2017(4):50-54.
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【39】PERT A D, BARON M G, BIRKETT J W. Journal of Forensic Sciences[J], 2006,51(5):1033-1049.
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【43】BAERNCOPF J M, MCGUFFIN V L, SMITH R W. Journal of Forensic Sciences[J], 2011,56(1):70-81.
【44】PRATHER K R, MCGUFFIN V L, SMITH R W. Forensic Science International[J], 2012,222(1/2/3):242-251.
【2】SANDERCOCK P M, DU P E. Forensic Science International[J], 2004,140(1):43-59.
【3】SANDERCOCK P M, DU P E. Forensic Science International[J], 2004,140(1):71-77.
【4】TURNER D A, WILLIAMS M, SIGMAN M A, et al. Journal of Forensic Sciences[J], 2018,63(1):58-65.
【5】TURNER D A, PICHTEL J, RODENAS Y. Forensic Science International[J], 2015,251:69-76.
【6】BAERNCOPF J, HUTCHES K. Forensic Science International[J], 2014,244:12-20.
【7】FERNANDES M S, LAU C M, WONG W C. Science & Justice[J], 2002,42(1):7-15.
【8】SAMPAT A, VAN DAELEN B, LOPATKA M, et al. Separations[J], 2018,5(3):43-43.
【9】STAUFFER E. Science & Justice[J], 2003,43(1):29-40.
【10】LENTINI J J. Journal of Forensic Science[J], 1998,43(1):97-113.
【11】WAMPLER T P. Applied pyrolysis handbook[M]. New York:Marcel Dekker, 1995:1-29.
【12】MCNEILL I C, MEMETEA L, COLE W J. Polymer Degradation and Stability[J], 1995,49(1):181-191.
【13】李荣福,胡兴洲.高分子学报[J], 2000,1(2):136-141.
【14】LI R, HU X. Polymer Degradation and Stability[J], 1998,62(3):523-528.
【15】BORUSIEWICZ R, ZIEBAPALUS J, ZADORA G. Forensic Science International[J], 2006,160(2):115-126.
【16】WILLIAMS M R, SIGMAN M E, LEWIS J, et al. Forensic Science International[J], 2012,222(1/2/3):373-386.
【17】高佳鑫.火灾残留物中助燃剂鉴定的影响因素分析[D].合肥:中国科学技术大学, 2014.
【18】BORUSIEWICZ R. Science & Justice[J], 2015,55(3):176-180.
【19】LENTINI J J, DOLAN J A, CHERRY C. Journal of Forensic Science[J], 2000,45(5):968-989.
【20】ALMIRALL J R, FURTON K G. Journal of Analytical & Applied Pyrolysis[J], 2004,71(1):51-67.
【21】JHAUMEER-LAULLOO S, MACLEAN J, RAMTOOLA L, et al. Pure and Applied Chemical Sciences[J], 2013,1(2):51-61.
【22】STAUFFER E. Identification and characterization of interfering products in fire debris analysis[D]. Miami:Florida International University, 2001.
【23】DEHAAN J D, TAORMINA E I, BRIEN D J. Science & Justice[J], 2016,57(2):118-118.
【24】SANDERCOCK P M L. Journal of Forensic Sciences[J], 2012,57(3):738-743.
【25】SANDERCOCK P M L. Forensic Science International[J], 2008,176(2/3):93-110.
【26】GUO W, LEU W T, HSIAO S H, et al. Polymer Degradation & Stability[J], 2006,91(1):21-30.
【27】EVANS R J, MILNE T A. Energy & Fuels[J], 1987,1(2):123-137.
【28】STAUFFER E, DOLAN J A, NEWMAN R. Fire debris analysis[M]. New York:Academic Press, 2007:89-102.
【29】KETO R O, WINEMAN P L. Analytical Chemistry[J], 1991,63(18):1964-1971.
【30】ASTM E1618-14 Standard test method for ignitable liquid residues in extracts from fire debris samples by gas chromatography-mass spectrometry[S].
【31】LEE X Q, SANDERCOCK P M L, HARYNUK J J. Journal of Analytical and Applied Pyrolysis[J], 2016,118(1):75-85.
【32】LI Y, LIANG D, SHEN H. Procedia Engineering[J], 2013,52:664-670.
【33】WELLS S B. Journal of Forensic Science[J], 2005,50(4):109-113.
【34】WINTERS K, EVANS M. Journal of Forensic Sciences[J], 2016,61(4):1085-1092.
【35】BLOMQVIST P, ROSELL L, SIMONSON M. Fire Technology[J], 2004,40(1):39-58.
【36】PRATHER K R, TOWNER S E, MCGUFFIN V L, et al. Journal of Forensic Sciences[J], 2014,59(1):52-60.
【37】邓雨欣.消防技术与产品信息[J], 2017(4):50-54.
【38】NOVAK M, PALYA D, BODAI Z, et al. Forensic Science International[J], 2017,270:61-69.
【39】PERT A D, BARON M G, BIRKETT J W. Journal of Forensic Sciences[J], 2006,51(5):1033-1049.
【40】ALMIRALL J R, FURTON K G. Analytical methods for the detection and characterization of ignitable liquid residues from fire debris[M]. Boca Raton:CRC Press, 2016:144-169.
【41】邢若葵,王松才,戴维列,等.中国司法鉴定[J], 2010(6):16-20.
【42】HENDRIKSE J. Forensic Science International[J], 2007,167(2/3):213-219.
【43】BAERNCOPF J M, MCGUFFIN V L, SMITH R W. Journal of Forensic Sciences[J], 2011,56(1):70-81.
【44】PRATHER K R, MCGUFFIN V L, SMITH R W. Forensic Science International[J], 2012,222(1/2/3):242-251.
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